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DESMA 9: Art, Science and Technology “Imagination is more important than knowledge. For knowledge is limited to all we now know and understand, while imagination embraces the entire world, and all there ever will be to know and understand.” Einstein Industrialization, Robotics, Kinetic / robotic art

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DESMA 9:Art, Science and Technology

“Imagination is more important than knowledge. For knowledge is limited to all we now know and understand, while imagination embraces the entire world, and all there ever will be to know and understand.”

Einstein

Industrialization, Robotics, Kinetic / robotic art

TODAY 4/16/07:

• Quick Review of last week’s topics• Industrialization / ford / taylorism• Communication revolution: movable type• Mechanical Philosophy / dualism• Robotics / Cybernetics / Computing• Kinetic Art• Contemporary art using robotics

Assembly Lines:FORD

Second Industrial Revolution

commonly associated with electrification as pioneered byNikola Tesla, Thomas Alva Edison and George Westinghouse and by

scientific management as applied by Frederick Winslow Taylor.

Frederick Winslow Taylor:Taylorism

He would break a job into its component parts and measure each to the hundredth of a minute. One of his most famous studies involved shovels. He noticed that workers used the same shovel for all materials. He determined that the most effective load was 21½ lb, and found or designed shovels that for each material would scoop up that amount.

Communication: movable type

Printing Press

Although first invented by the Chinese in 1040, it was not invented in the West unitl 1450 by Johannes Gutenberg

Gutenberg BIble

Although Gutenberg was financially unsuccessful in his lifetime,the printing technologies spread quickly, and news and books began to travel

across Europe much faster than before. It fed the growing Renaissance, and since it greatly facilitated scientific publishing, it was a major catalyst for the later scientific revolution.

Metal Movable type

A case of cast metal type pieces and typeset matter in a composing stick

Mechanical Philosophy:Cartesianism, Rationalism, Foundationalism

The mechanists, of whom the most important one was René Descartes,rejected all goals, emotion and intelligence in nature. In this view the world consisted of particles of matter -- which lacked all active powers and were fundamentally inert -- with motion being caused by direct physical contact.

Where nature had previously been imagined to be like an active entity, the mechanical philosophers viewed nature as following natural, physical laws.

Descartes’s illustration of dualism. Inputs are passed on by the sensory organs to the epiphysis in the brain and from there to the immaterial spirit.

Dualism: the Mind/Body problem

Descartes was the first to clearly identify the mind with consciousness and self-awareness and to distinguish this from the brain, which was the seat of intelligence. Hence, he was the first to formulate the mind-body problem in the form in which it exists today.[

The Medium is the Message

McLuhan studies the emergence of what he calls Gutenberg Man, the subject produced by the change of consciousness wrought by the advent of the printed book. A propos of his axiom, "The medium is the message," McLuhan argues that technologies are not simply inventions which people employ but are the means by which people are re-invented.

The invention of movable type was the decisive moment in the change from a culture in which all the senses partook of a common interplay to a tyranny of the visual. He also argued that the development of the printing press led to the creation of nationalism, dualism, domination of rationalism, automatisation of scientific research, uniformation and standartisation of culture and alienation of individuals.

Robotics

Origin of the word robot:The word robot was introduced by Czech writer Karel Čapekin his play R.U.R. (Rossum's Universal Robots) which was written in 1920

Mary Shelley: FrankensteinThe Modern Prometheus, 1818

Fritz Lang’s Metropolis

Futurists

Marinetti’s 1916 manifesto Laszlo Moholy-Nagy, 1924

Cybernetics

The name cybernetics was coined by Norbert Wiener to denote the study of "teleological mechanisms" and was popularized through his book Cybernetics, or Control and Communication in the Animal and Machine (1948).

The term cybernetics stems from the Greek Κυβερνήτης (kybernetes, steersman, governor, pilot, or rudder — the same root as government).

MEMEX

Vannevar Bush’s theoretical Memex machine, 1945

He argued that as humans turned from war, scientific efforts should shift from increasing physical abilities to making all previous collected human knowledgemore accessible. “As We May Think”

Walter Benjamin:The Work of Art in the Age of Mechanical

Reproduction,1936A better translation of the original German title might be"The Work of Art in the Age of Its Technological Reproducibility“(Das Kunstwerk im Zeitalter seiner technischen Reproduzierbarkeit).

"For the first time in world history, mechanical reproduction emancipates the work of art from its parasitical dependence on ritual."

Kinetic Art

Kinetic art was first recorded by the sculptors Naum Gabo and Antoine Pevsnerin their Realist Manifesto issued as part of a manifesto of constructivism in 1920 in Moscow. "Bicycle Wheel," of 1913, by Marcel Duchamp, is said to be the first kinetic sculpture

The Manifesto focused largely on divorcing art from such conventions as use oflines, color, volume, and mass. They also believed art should accompany man

through all parts of his life: "at the workbench, at the office, at work, at rest, and at leisure; work days and holidays, at home and on the road, so that the flame of life does not go out in man."

Computers

Engelbart

1962 research report which Engelbart refers to as his 'bible': “Augmenting Human Intellect: A Conceptual Framework”. The concept of network augmented intelligence is attributed to Engelbart based on this pioneering work.

ARPANET

On October 29, 1969, the world's first electronic computer network, the ARPANET,was established between nodes at Leonard Kleinrock’s lab at UCLA and

Engelbart's lab at SRI. Interface Message Processors at both sites served as the Backbone of the first Internet/In addition to SRI and UCLA, UCSB, and the University of Utah were part of the original four network nodes.

E.A.T: experiments in art & technology

1966Engineer Billy Kluver and artist Robert Rauschenberg "Rauschenbergdecided to form Experiments in Art and Technology as a service organization for artists, engineers and scientists."

Frank Malina: astrophysicist and kinetic artist founds

Leonardo journal, 1968

In his work as a scientist and engineer, Malina had access to an abundance of scholarly periodicals that enabled peers in any given field to stay abreast of each other's work and to monitor important news developments. There was no equivalent publication for artists, so he decided to start one. The concept was simple---a publication by serious artists with subject integrity secured by the same kind of peer review of articles that is common in scientific journals. Malina felt that the demystification of modern art could, in part, be accomplished by the free exchange of information regarding artistic disciplines.

Roy Ascott

One of the first theoretical attempts to integrate the emerging fields of human-computer interactivity and cybernetics with artistic practice is Ascott's article,"Behavioral Art and the Cybernetic Vision," from 1966-67. Ascott noted that the

computer was "the supreme tool that... technology has produced.

Used in conjunction with synthetic materials it can be expected to open up paths of radical change in art." Ascott saw that human-computer interaction would profoundly affect aesthetics, leading artists to embrace collaborative and interactive modes of experience.

BIOROBOTICS

Chico MacMurtrie

Ken Feingold

Robotic painting

Ken Goldberg

Survival Research Labs

Stelarc

IPAM

A Public Lecture: The Nature of Roughness in Mathematics, Science and Art

presented by Benoit Mandelbrot

Time and Location:April 16, 2007, 4:30 pmLaKretz Hall (click on core-south), Room 110